Department of Environmental Engineering, Technical University of Denmark, DK-2800 Kongens Lyngby, Denmark.
Shell Health, Shell International B.V., 2596 HR The Hague, The Netherlands.
Environ Sci Technol. 2021 Aug 17;55(16):11091-11101. doi: 10.1021/acs.est.1c02773. Epub 2021 Aug 6.
Biodegradation kinetics data are keystone for evaluating the environmental persistence and risk of chemicals. Biodegradation kinetics depend highly on the prevailing temperature, which influences microbial community structures, metabolic rates, and chemical availability. There is a lack of high-quality comparative biodegradation kinetics data that are determined at different test temperatures but with the same microbial inoculum and chemical availability. The present study was designed to determine the effect of test temperature on the biodegradation kinetics of hydrocarbons while avoiding confounding factors. We used inocula from a Northern river (2.7 °C) and a Central European river (12.5 °C). Aqueous stock solutions containing 45 individual hydrocarbons were generated by passive dosing and added to river water containing the native microorganisms. Compound-specific biodegradation kinetics were then determined at 2.7, 12, and 20 °C based on substrate depletion. Main findings comprise the following: (1) Degradation half-times (DegT) of 34 test chemicals were determined at different test temperatures and were largely consistent with the Arrhenius equation (activation energy, 65.4 kJ/mol). (2) Differences in biodegradation kinetics between tested isomers were rather limited. (3) The recent lowering of standard test temperature from 20 to 12 °C results typically in a doubling of DegT values and can lead to a stricter persistency assessment.
生物降解动力学数据是评估化学品环境持久性和风险的关键。生物降解动力学高度依赖于环境温度,而温度又会影响微生物群落结构、代谢率和化学物质的可用性。目前缺乏在不同测试温度下但具有相同微生物接种物和化学物质可用性的高质量比较生物降解动力学数据。本研究旨在确定测试温度对烃类生物降解动力学的影响,同时避免混杂因素。我们使用来自北方河流(2.7°C)和中欧河流(12.5°C)的接种物。通过被动给药生成含有 45 种单个烃类的水性储备溶液,并将其添加到含有天然微生物的河水。然后根据基质消耗确定 2.7、12 和 20°C 下的化合物特异性生物降解动力学。主要发现包括以下几点:(1) 在不同的测试温度下确定了 34 种测试化学品的降解半衰期(DegT),这些 DegT 与阿累尼乌斯方程(活化能为 65.4 kJ/mol)基本一致。(2) 测试异构体之间的生物降解动力学差异相当有限。(3) 最近将标准测试温度从 20°C 降低到 12°C,通常会导致 DegT 值翻倍,并可能导致更严格的持久性评估。